Showing 661 - 680 results of 100,125 for search '(( 5 ((((nm decrease) OR (a decrease))) OR (nn decrease)) ) OR ( 12 men decrease ))', query time: 1.25s Refine Results
  1. 661
  2. 662
  3. 663
  4. 664
  5. 665
  6. 666
  7. 667

    Bidirectional Optical Control of Proton Motive Force in Escherichia coli Using Microbial Rhodopsins by Kotaro Nakanishi (3389300)

    Published 2024
    “…Tethered cell experiments revealed that, upon illumination, the torque of the flagellar motor decreased to nearly zero (28 pN nm) with <i>Rm</i>XeR, while it increased to 1170 pN nm with AR3. …”
  8. 668

    Bidirectional Optical Control of Proton Motive Force in Escherichia coli Using Microbial Rhodopsins by Kotaro Nakanishi (3389300)

    Published 2024
    “…Tethered cell experiments revealed that, upon illumination, the torque of the flagellar motor decreased to nearly zero (28 pN nm) with <i>Rm</i>XeR, while it increased to 1170 pN nm with AR3. …”
  9. 669

    Bidirectional Optical Control of Proton Motive Force in Escherichia coli Using Microbial Rhodopsins by Kotaro Nakanishi (3389300)

    Published 2024
    “…Tethered cell experiments revealed that, upon illumination, the torque of the flagellar motor decreased to nearly zero (28 pN nm) with <i>Rm</i>XeR, while it increased to 1170 pN nm with AR3. …”
  10. 670

    Bidirectional Optical Control of Proton Motive Force in Escherichia coli Using Microbial Rhodopsins by Kotaro Nakanishi (3389300)

    Published 2024
    “…Tethered cell experiments revealed that, upon illumination, the torque of the flagellar motor decreased to nearly zero (28 pN nm) with <i>Rm</i>XeR, while it increased to 1170 pN nm with AR3. …”
  11. 671
  12. 672
  13. 673
  14. 674
  15. 675
  16. 676
  17. 677
  18. 678
  19. 679
  20. 680